Partial oxidation of methane to methanol is made possible with metal monoxide anions

T Tatsuya Chiba (Department of Chemistry) B Benjamin R. Bilik (Department of Chemistry, Johns Hopkins University 1 , Baltimore, Maryland 21218,) K Kathryn Foreman (Department of Chemistry, Johns Hopkins University , Baltimore, Maryland 21218,) S Shiying Wang (Department of Chemistry) Y Yuheng Han (Department of Chemistry, Johns Hopkins University 1 , Baltimore, Maryland 21218,) E Eslam F. M. Abdelazim (Department of Chemistry and Biochemistry, Auburn University 2 , Auburn, Alabama 36849,) S Safaa Sader (Department of Chemistry and Biochemistry, Auburn University 2 , Auburn, Alabama 36849,) E Evangelos Miliordos (Department of Chemistry and Biochemistry, Auburn University 2 , Auburn, Alabama 36849,) K Kit H. Bowen (Department of Chemistry)

Abstract

Previous calculations have shown that certain transition metal monoxide anions have an advantage in catalyzing the partial oxidation of CH4 to CH3OH, viz., MO− + CH4 → M− + CH3OH, because their anionic metal centers interact only weakly with the methanol product, thus preventing its over-oxidation to formaldehyde. In this study, the oxidation of methane to methanol by NiO− was demonstrated experimentally by cryo-trapping the neutral reaction products onto a substrate and then characterizing the eluded product via temperature-programmed desorption. This work both vindicates the previous calculations and presents a proof-of-principle example. Concurrent calculations showed this reaction to selectively form methanol to the detriment of other products.

Article Details

Volume / Issue Vol. 164, Issue 24
Published June 28, 2026
ISSN 0021-9606
Publisher American Institute of Physics

Journal Info

The Journal of Chemical Physics

American Institute of Physics

ISSN: 0021-9606 Physical Sciences

Authors (9)

T

Tatsuya Chiba

Department of Chemistry

B

Benjamin R. Bilik

Department of Chemistry, Johns Hopkins University 1 , Baltimore, Maryland 21218,

K

Kathryn Foreman

Department of Chemistry, Johns Hopkins University , Baltimore, Maryland 21218,

S

Shiying Wang

Department of Chemistry

Y

Yuheng Han

Department of Chemistry, Johns Hopkins University 1 , Baltimore, Maryland 21218,

E

Eslam F. M. Abdelazim

Department of Chemistry and Biochemistry, Auburn University 2 , Auburn, Alabama 36849,

S

Safaa Sader

Department of Chemistry and Biochemistry, Auburn University 2 , Auburn, Alabama 36849,

E

Evangelos Miliordos

Department of Chemistry and Biochemistry, Auburn University 2 , Auburn, Alabama 36849,

K

Kit H. Bowen

Department of Chemistry